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Shear-induced hydrodynamic diffusion model for cross-flow microfiltration: role of the particle volume fraction

机译:剪切诱导的交叉流动微滤的流体动力扩散模型:颗粒体积分数的作用

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The role of the cake particle solidosity in the context of the shear-induced diffusion model for membrane dominated microfiltration is presented. First the concept of shear-induced diffusion is reviewed to illustrate the importance of the particle solidosity in the formation of the cake. The diffusivity for concentrated suspension is subsequently presented. The estimation of the particle solidosity of the cake for monodisperse and polydisperse feed suspension is discussed. In the context of polydisperse particle suspension, an approach based on the particle adhesion concept for the estimation of the average particle radius in the various regions of the membrane filter is presented. This approach is combined with the shear-induced diffusion model for the estimation of the cake solidosity and the investigation of the viscosity and is illustrated using the experimental data of Romero and Davis for the microfiltration of large particle sizes [J. Membr. Sci., 62 (1991) 249-273]. This analysis indicates that the solidosity varies along the membrane surface with maximum predicted solidosities ranging from 0.57 to 0.66. Expressions for the viscosity of concentrated suspension are also discussed.
机译:在用于膜主导微滤剪切诱导扩散模型的上下文中,蛋糕粒子solidosity的作用被呈现。第一剪切诱导扩散的概念审查,以示出在蛋糕的形成颗粒solidosity的重要性。对于浓缩的悬浮液中的扩散率随后呈现。滤饼为单分散多分散和进料悬浮液的颗粒solidosity的估计进行了讨论。在多分散的颗粒悬浮液的情况下,基于用于在所述膜过滤器的各区域的平均颗粒半径的推定的粒子附着概念的方法呈现。该方法与用于滤饼solidosity的估计和粘度的调查剪切诱导扩散模型混合,并且使用Romero和戴维斯的实验数据为大粒径的微滤[J.被示MEMBR。科学。,62(1991)249-273]。这一分析表明,solidosity连同最大预测solidosities范围从0.57到0.66的膜表面而变化。对于浓缩的悬浮液的粘度表达式进行了讨论。

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